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Demography and weak selection drive patterns of transposable element diversity in natural populations of Arabidopsis lyrata

机译:拟南芥自然种群中转座子多样性的人口学和弱选择驱动模式

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摘要

Transposable elements (TEs) are the major component of most plant genomes, and characterizing their population dynamics is key to understanding plant genome complexity. Yet there have been few studies of TE population genetics in plant systems. To study the roles of selection, transposition, and demography in shaping TE population diversity, we generated a polymorphism dataset for six TE families in four populations of the flowering plant Arabidopsis lyrata. The TE data indicated significant differentiation among populations, and maximum likelihood procedures suggested weak selection. For strongly bottlenecked populations, the observed TE band-frequency spectra fit data simulated under neutral demographic models constructed from nucleotide polymorphism data. Overall, we propose that TEs are subjected to weak selection, the efficacy of which varies as a function of demographic factors. Thus, demographic effects could be a major factor driving distributions of TEs among plant lineages.
机译:转座因子(TEs)是大多数植物基因组的主要组成部分,表征其种群动态是了解植物基因组复杂性的关键。但是,关于植物系统中TE种群遗传学的研究很少。为了研究选择,换位和人口统计学在塑造TE种群多样性中的作用,我们生成了开花植物拟南芥四个种群中六个TE家族的多态性数据集。 TE数据表明人群之间存在显着差异,最大似然程序表明选择不力。对于瓶颈严重的人群,观察到的TE频带频谱适合在根据核苷酸多态性数据构建的中性人口模型下模拟的数据。总体而言,我们建议TE接受弱选择,其功效随人口因素的变化而变化。因此,人口统计学效应可能是驱动TE在植物谱系中分布的主要因素。

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